Ultrasonic investigation of molecular interactions in aqueous alkaline solution of mono azo dye metanil yellow and hexacyanoferrate(III) ions

A. Goel, M. Chaudhary
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引用次数: 1

Abstract

In order to investigate the nature of molecular interaction in the reaction mixture of metanil yellow with hexacyanoferrate (III) ions in basic medium, ultrasonic velocity was measured over wide ranges of concentrations. The different acoustic parameters such as adiabatic compressibility (βad), intermolecular free length (Lf), acoustical impedance (Z), relaxation time (τ) and Gibb’s free energy (ΔG) were calculated at 7 MHz utilizing ultrasonic interferometer at temperature 313 K. The experimental information for ultrasonic velocity (u), viscosity (η) and density (ρ) of the solutions for various concentrations have been utilized to ascertain these parameters. The variation of these parameters with concentration of solute indicates the nature of interaction present in the binary mixture. The results are depicted in terms of molecular interaction between the components of the solutions
单偶氮染料金属黄与六氰高铁酸盐(III)离子在碱性水溶液中分子相互作用的超声研究
为了研究金属黄与六氰高铁酸盐(III)离子在碱性介质中反应混合物中的分子相互作用性质,在较宽的浓度范围内测量了超声波速度。利用超声干涉仪在313 K温度下,在7 MHz频率下计算了不同的声学参数,如绝热压缩率(βad)、分子间自由长度(Lf)、声阻抗(Z)、弛豫时间(τ)和吉布自由能(ΔG)。利用不同浓度溶液的超声速度(u)、粘度(η)和密度(ρ)的实验信息确定了这些参数。这些参数随溶质浓度的变化表明二元混合物中存在相互作用的性质。结果用溶液组分之间的分子相互作用来描述
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